RhoA (Ras homolog gene family member A) belongs to the Rho subfamily of GTPases. ROCK (Rho—associated coiled—coil forming protein kinase) is downstream of the active RhoA and affects the generation and secretion of ...RhoA (Ras homolog gene family member A) belongs to the Rho subfamily of GTPases. ROCK (Rho—associated coiled—coil forming protein kinase) is downstream of the active RhoA and affects the generation and secretion of cellular element, which will result in relevant biologic effects. The RhoA/ROCK signaling pathway consists of these serious reactions. Therefore, the activation and inhibition of this pathway are closely related to the occurrence and development of many diseases. The research on the molecular mechanism of these diseases may be instructive and helpful to the clinical treatmen and prognosis of diseases. Recent studies of these typical diseases related to RhoA/ROCK signaling pathway are viewed in this article.展开更多
Mesenchymal stem cell (MSC)-based treatments have shown promise for improving tendon healing and repair. MSCs have the potential to differentiate into multiple lineages in response to select chemical and physical st...Mesenchymal stem cell (MSC)-based treatments have shown promise for improving tendon healing and repair. MSCs have the potential to differentiate into multiple lineages in response to select chemical and physical stimuli, including into tenocytes. Cell elongation and cytoskeletal tension have been shown to be instrumental to the process of MSC differentiation. Previous studies have shown that inhibition of stress fiber formation leads MSCs to default toward an adipogenic lineage, which suggests that stress fibers are required for MSCs to sense the environmental factors that can induce differentiation into tenocytes. As the Rho/ROCK signal transduction pathway plays a critical role in both stress fiber formation and in cell sensation, we examined whether the activation of this pathway was required when inducing MSC tendon differentiation using rope-like silk scaffolds. To accomplish this, we employed a loss-of-function approach by knocking out ROCK, actin and myosin (two other components of the pathway) using the specific inhibitors Y-27632, Latrunculin A and blebbistatin, respectively. We demonstrated that independently disrupting the cytoskeleton and the Rho/ ROCK pathway abolished the expression of tendon differentiation markers and led to a loss of spindle morphology. Together, these studies suggest that the tension that is generated by MSC elongation is essential for MSC teno-differentiation and that the Rho/ROCK pathway is a critical mediator of tendon differentiation on rope-like silk scaffolds.展开更多
RhoA is a small GTPase protein.Its downstream effector protein Rho kinase(ROCK)regulates a variety of cell functions,including cell growth,gene expression and cytoskeleton recombination.Studies have demonstrated that ...RhoA is a small GTPase protein.Its downstream effector protein Rho kinase(ROCK)regulates a variety of cell functions,including cell growth,gene expression and cytoskeleton recombination.Studies have demonstrated that this pathway plays an important pathophysiological role in diabetic nephropathy and other complications,hypertension,stroke,tumor,osteoarthritis,acute lung injury and other diseases.The occurrence and development of diabetes-related disease is closely related to the activation or up-regulation of RhoA/ROCK pathway.As a key target of drug development,ROCK inhibitors have been widely concerned by scholars.This article reviews the relationship between RhoA/ROCK pathway and diabetesrelated disease,and offers a new and effective strategy for the prevention and treatment of this series of diseases.展开更多
文摘RhoA (Ras homolog gene family member A) belongs to the Rho subfamily of GTPases. ROCK (Rho—associated coiled—coil forming protein kinase) is downstream of the active RhoA and affects the generation and secretion of cellular element, which will result in relevant biologic effects. The RhoA/ROCK signaling pathway consists of these serious reactions. Therefore, the activation and inhibition of this pathway are closely related to the occurrence and development of many diseases. The research on the molecular mechanism of these diseases may be instructive and helpful to the clinical treatmen and prognosis of diseases. Recent studies of these typical diseases related to RhoA/ROCK signaling pathway are viewed in this article.
文摘Mesenchymal stem cell (MSC)-based treatments have shown promise for improving tendon healing and repair. MSCs have the potential to differentiate into multiple lineages in response to select chemical and physical stimuli, including into tenocytes. Cell elongation and cytoskeletal tension have been shown to be instrumental to the process of MSC differentiation. Previous studies have shown that inhibition of stress fiber formation leads MSCs to default toward an adipogenic lineage, which suggests that stress fibers are required for MSCs to sense the environmental factors that can induce differentiation into tenocytes. As the Rho/ROCK signal transduction pathway plays a critical role in both stress fiber formation and in cell sensation, we examined whether the activation of this pathway was required when inducing MSC tendon differentiation using rope-like silk scaffolds. To accomplish this, we employed a loss-of-function approach by knocking out ROCK, actin and myosin (two other components of the pathway) using the specific inhibitors Y-27632, Latrunculin A and blebbistatin, respectively. We demonstrated that independently disrupting the cytoskeleton and the Rho/ ROCK pathway abolished the expression of tendon differentiation markers and led to a loss of spindle morphology. Together, these studies suggest that the tension that is generated by MSC elongation is essential for MSC teno-differentiation and that the Rho/ROCK pathway is a critical mediator of tendon differentiation on rope-like silk scaffolds.
基金National Natural Science Foundation of China(No.81660148)Innovation and Entrepreneurship Project of Science and Technology Bureau of Chengguan District of Lanzhou City(No.2018HFZ0068)Hospital cultivation Program of Gansu Provincial people's Hospital(No.19SYPYB-4).
文摘RhoA is a small GTPase protein.Its downstream effector protein Rho kinase(ROCK)regulates a variety of cell functions,including cell growth,gene expression and cytoskeleton recombination.Studies have demonstrated that this pathway plays an important pathophysiological role in diabetic nephropathy and other complications,hypertension,stroke,tumor,osteoarthritis,acute lung injury and other diseases.The occurrence and development of diabetes-related disease is closely related to the activation or up-regulation of RhoA/ROCK pathway.As a key target of drug development,ROCK inhibitors have been widely concerned by scholars.This article reviews the relationship between RhoA/ROCK pathway and diabetesrelated disease,and offers a new and effective strategy for the prevention and treatment of this series of diseases.